Electronic hookah atomizer

By designing a compact structure and a stable connection method, the problems of inconvenience in carrying, poor airflow, and unstable connection of traditional electronic water vapor atomizers have been solved, achieving smooth airflow and stable connection, thus improving the user experience.

CN224522360UActive Publication Date: 2026-07-21KUNSHAN XIANGWEI ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KUNSHAN XIANGWEI ELECTRONIC TECH CO LTD
Filing Date
2025-07-03
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Traditional electronic water vapor atomizers are complex in structure, inconvenient to carry, have poor airflow, and unstable connections, which affect the atomization effect and user experience.

Method used

Design a structure including an upper cover, heating head, lower housing, mounting bracket, atomizing pot, battery, and adapter base. Through the coordinated work of air inlet slot, air guide channel, and air pipe, a compact airflow channel is formed, and a stable connection of components is achieved by using permanent magnets and positioning mechanisms.

Benefits of technology

It features a compact and portable structure, smooth airflow, and stable connection, ensuring atomization effect and stability during use, thus improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to electronic water pipe technical field especially, more particularly to a kind of electronic water pipe atomizer, including upper cover shell, heating head, lower casing, mounting bracket, atomizing pot, battery and adaptive base, upper cover shell is located at atomizing pot top, heating head is located in upper cover shell, mounting bracket is located in lower casing, atomizing pot is located at the upper portion of mounting bracket, battery is set to the lower portion of mounting bracket and is used to be electrically connected with heater;Adaptive base is connected in the bottom of lower casing;Upper cover shell is equipped with air inlet groove, heating head is equipped with gas guide channel, air inlet groove, gas guide channel and atomizing pot inside are connected;Mounting bracket is equipped with vent pipe, atomizing pot is connected with adaptive base by vent pipe;Adaptive base is connected with water pipe bottle.The utility model is realized compact structure by each component cooperation, it is convenient to carry, airflow smooth guarantee atomization effect and with water pipe bottle connection stable, effectively solved the problem that traditional water pipe equipment structure is complex and is not convenient to carry, airflow is not smooth and affects atomization effect and connection unstable.
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Description

Technical Field

[0001] This utility model relates to the field of electronic hookah technology, and in particular to an electronic hookah atomizer. Background Technology

[0002] The primary function of an electronic hookah atomizer is to heat and atomize hookah materials (such as tobacco paste, tobacco, or e-liquid) into smoke for the user to inhale, thus simulating the smoking experience of traditional tobacco. Its working principle involves a battery-powered heater that heats the e-liquid to its vaporization temperature, forming smoke. This smoke is then filtered through a hookah bottle and inhaled via a straw.

[0003] Traditional e-steam atomizers often suffer from complex structures and cumbersome assembly, resulting in bulky devices that are inconvenient to carry and use. Furthermore, the airflow channel design of traditional devices is often flawed, leading to airflow obstruction and affecting atomization performance and user experience. In addition, the connections between components are not always stable, and loosening can occur during use, disrupting normal operation. Therefore, designing an e-steam atomizer with a reasonable and compact structure, smooth airflow, and stable connections has become a pressing technical challenge, necessitating improvement. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies by providing an electronic hookah atomizer. Through the coordinated operation of its components, the device achieves a compact and portable structure, smooth airflow to ensure atomization, and stable connection with the hookah bottle. This effectively solves the problems of traditional hookah devices, such as complex structure that is inconvenient to carry, poor airflow affecting atomization, and unstable connection.

[0005] To achieve the above objectives, this utility model provides an electronic water vapor atomizer, comprising an upper cover shell, a heating head, a lower housing, a mounting bracket, an atomizing pot, a battery, and an adapter base.

[0006] The upper cover is placed on top of the atomizing pot, the heating head is placed inside the upper cover, the mounting bracket is placed inside the lower housing, the atomizing pot is placed on the upper part of the mounting bracket, and the battery is placed on the lower part of the mounting bracket and is used to electrically connect with the heater inside the heating head.

[0007] The adapter base is connected to the bottom of the lower housing;

[0008] The upper cover shell is provided with an air inlet groove, and the heating head is provided with an air guide channel. The air inlet groove, the air guide channel and the interior of the atomizing pot are connected.

[0009] The mounting bracket is equipped with a ventilation pipe, and the atomizing pot is connected to the adapter base through the ventilation pipe; the adapter base is connected to the hookah bottle.

[0010] Preferably, the upper cover shell includes an upper cover body and an upper connecting seat, a positioning mechanism is provided between the upper cover body and the upper connecting seat, and the upper cover body is connected to the outside of the upper connecting seat through the positioning mechanism; the heating head is fixed to the upper connecting seat;

[0011] The upper connecting seat is provided with a magnetic trough, and a first permanent magnet is provided in the magnetic trough;

[0012] The mounting bracket has a magnetic groove at its top, and a second permanent magnet is disposed in the magnetic groove; the first permanent magnet and the second permanent magnet are arranged with opposite polarities.

[0013] Preferably, the positioning mechanism includes a positioning strip disposed on the inner side of the upper cover body and a positioning hole disposed on the edge of the upper connecting seat, wherein the positioning strip is inserted into the positioning hole;

[0014] A connecting strip is provided on the outside of the heating head, and the connecting strip abuts against the outside of the positioning hole.

[0015] Preferably, the heating head includes a heat insulation shell and a heat-conducting base, the heat-conducting base being connected to the lower part of the heat insulation shell, and a heat exchange cavity being provided between the heat-conducting base and the interior of the heat insulation shell;

[0016] The heat-conducting base is provided with a heating chamber for installing the first heater;

[0017] The heat insulation shell is provided with an air inlet for introducing gas into the heat exchange cavity, and the heat conduction seat is provided with an air outlet groove along the inner circumferential direction of the connection with the heat insulation shell for discharging gas out of the heat exchange cavity. The air inlet, the heat exchange cavity and the air outlet groove form the gas guiding channel.

[0018] Preferably, a radiator is provided on the heat-conducting base, and an auxiliary heat chamber for installing a second heater is provided between the radiator and the heat-conducting base;

[0019] The upper connecting seat is provided with a first conductive electrode; the top of the mounting bracket is provided with a second conductive electrode, the second conductive electrode is electrically connected to the battery, and both the first heater and the second heater are electrically connected to the battery through the first conductive electrode and the second conductive electrode.

[0020] Preferably, a heat insulation cavity is provided between the heating head and the upper cover shell, and a sealing element is provided at the connection between the heat insulation cavity and the air inlet channel. The sealing element is provided with a limiting groove, and the upper cover body is provided with a limiting edge, which abuts against the limiting groove.

[0021] Preferably, the mounting bracket is provided with a heat insulation module, and the atomizing pot is fixed inside the heat insulation module;

[0022] The vent pipe passes through the heat insulation module and connects to the adapter base;

[0023] The mounting bracket is provided with a receiving compartment, and a limit piece is provided at one end of the receiving compartment.

[0024] Preferably, the heat insulation module has a fixing groove inside, and the atomizing pot is fixed in the fixing groove;

[0025] The inner wall of the mounting bracket is provided with a slot, and the upper edge of the heat insulation module is provided with a first locking block, which engages with the slot.

[0026] The heat insulation module has multiple second locking blocks spaced apart circumferentially at its lower part, and a mating groove is provided between two second locking blocks. The mounting bracket is provided with a connecting piece that is inserted into the mating groove. The connecting piece is inserted into the mating groove, and the bottom of the second locking block is engaged with the bottom of the connecting piece.

[0027] Preferably, the atomizing pot includes a pot body and a pot lid, the pot lid is disposed on the upper part of the pot body, and the pot lid is provided with a plurality of air guide holes in the circumferential direction to guide the interior of the pot body;

[0028] The pot lid has at least two protrusions spaced apart circumferentially on the side facing the pot body;

[0029] The pot body is provided with a protruding pipe, which is connected to the vent pipe.

[0030] Preferably, the pot body is provided with a heating component, which is electrically connected to the battery.

[0031] Preferably, the adapter base is provided with a connection slot, and the inner wall of the adapter base is provided with a heat insulation cavity along the circumference of the connection slot.

[0032] The beneficial effects of this utility model are as follows: The components, including the upper cover, heating head, lower housing, mounting bracket, atomizing pot, battery, and adapter base, work together in a compact structure, making it easy to carry and use. This arrangement ensures a reasonable layout of all components in the electronic hookah atomizer. The air inlet slot of the upper cover, the air guide channel of the heating head, and the interior of the atomizing pot are interconnected, forming a smooth airflow channel to guarantee atomization effect and ensure smooth airflow in the electronic hookah atomizer. The atomizing pot is connected to the adapter base via the air pipe of the mounting bracket, and the adapter base is then connected to the hookah bottle. This connection method is stable and reliable, ensuring stability during use and ensuring a stable connection between the electronic hookah atomizer and the hookah bottle. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of the structure of this utility model.

[0034] Figure 2This is an exploded structural diagram of the upper cover shell, heating head, and positioning mechanism of this utility model.

[0035] Figure 3 This is an exploded cross-sectional view of the upper cover shell, heating head, and positioning mechanism of this utility model.

[0036] Figure 4 This is a cross-sectional view of the upper cover and heating head of this utility model.

[0037] Figure 5 This is an exploded structural diagram of the lower housing, mounting bracket, atomizing pot, battery, adapter base, and heat insulation module of this utility model.

[0038] Figure 6 This is an exploded cross-sectional view of the lower housing, mounting bracket, atomizing pot, battery, adapter base, and heat insulation module of this utility model.

[0039] Figure 7 This is a schematic diagram of the heat insulation module structure of this utility model.

[0040] The reference numerals in the figures include:

[0041] 1. Upper cover shell; 11. Upper cover body; 111. Limiting edge; 12. Upper connecting seat; 121. Magnetic slot; 13. First conductive electrode; 14. Heat insulation cavity; 15. Sealing element; 151. Limiting groove; 16. Heat insulation element; 161. Air gap groove; 101. Air inlet groove;

[0042] 2. Heating head; 21. Connecting clip; 22. Heat insulation shell; 221. Air inlet; 222. Clearance groove; 23. Heat-conducting base; 231. Air outlet groove; 2311. Air inlet end; 2312. Diffuser end; 232. Cable outlet groove; 24. Heat exchange chamber; 25. Heating chamber; 26. Radiator; 27. Secondary heating chamber; 271. Cable outlet hole; 201. Air guide channel;

[0043] 3. Lower housing; 31. Lamp board; 32. PCB board; 33. Pressure relief hole;

[0044] 4. Mounting bracket; 41. Vent pipe; 42. Magnetizing groove; 43. Second conductive electrode; 44. Receiving chamber; 45. Limiting plate; 46. Slot; 47. Connecting plate;

[0045] 5. Atomizing pot; 51. Pot body; 511. Protruding tube; 512. Heating component; 52. Pot lid; 521. Air vent; 522. Protrusion;

[0046] 6. Battery;

[0047] 7. Adapter base; 71. Connecting slot; 72. Insulation cavity;

[0048] 8. Positioning mechanism; 81. Positioning strip; 82. Positioning hole;

[0049] 9. Insulation module; 91. Fixing groove; 92. First locking block; 93. Second locking block; 94. Mating groove. Detailed Implementation

[0050] The present invention will now be described in detail with reference to the accompanying drawings.

[0051] like Figures 1 to 7 As shown, the present invention provides an electronic water vapor atomizer, comprising an upper cover shell 1, a heating head 2, a lower housing 3, a mounting bracket 4, an atomizing pot 5, a battery 6, and an adapter base 7.

[0052] The upper cover 1 is disposed on the top of the atomizing pot 5, the heating head 2 is disposed inside the upper cover 1, the mounting bracket 4 is disposed inside the lower housing 3, the atomizing pot 5 is disposed on the upper part of the mounting bracket 4, and the battery 6 is disposed on the lower part of the mounting bracket 4 and is used to electrically connect with the heater inside the heating head 2.

[0053] The adapter base 7 is connected to the bottom of the lower housing 3;

[0054] The upper cover shell 1 is provided with an air inlet groove 101, and the heating head 2 is provided with an air guide channel 201. The air inlet groove 101, the air guide channel 201 and the atomizing pot 5 are connected.

[0055] The mounting bracket 4 is provided with an air pipe 41, and the atomizing pot 5 is connected to the adapter base 7 through the air pipe 41; the adapter base 7 is connected to the hookah bottle.

[0056] Specifically, the electronic water vapor atomizer features a compact structure that is easy to carry and use, thanks to the coordinated operation of components such as the upper cover 1, heating head 2, lower housing 3, mounting bracket 4, atomizing pot 5, battery 6, and adapter base 7. This arrangement allows for a rational layout of the various components.

[0057] The air inlet groove 101 of the upper cover shell 1, the air guide channel 201 of the heating head 2, and the interior of the atomizing pot 5 are connected to form a smooth airflow channel, ensuring the atomization effect and making the airflow of the electronic water vapor atomizer smooth.

[0058] The atomizing pot 5 is connected to the adapter base 7 via the air pipe 41 of the mounting bracket 4. The adapter base 7 is then connected to the hookah bottle. The connection method is stable and reliable, ensuring stability during use and making the connection between the electronic hookah atomizer and the hookah bottle stable.

[0059] During operation, battery 6 powers the heater inside heating head 2, which heats and atomizes the hookah material inside atomizing pot 5. Outside air enters through the air inlet slot 101 of the upper cover 1, passes through the air guide channel 201 of heating head 2, enters atomizing pot 5, and carries the atomized material through the air pipe 41 and the adapter base 7 into the hookah bottle, thus enabling the electronic hookah atomizer to work normally.

[0060] like Figures 2 to 3 As shown, the upper cover shell 1 in this embodiment includes an upper cover body 11 and an upper connecting seat 12. A positioning mechanism 8 is provided between the upper cover body 11 and the upper connecting seat 12. The upper cover body 11 is connected to the outside of the upper connecting seat 12 through the positioning mechanism 8, ensuring that the two are accurately positioned and connected, making the structure more stable and facilitating component installation and overall stability.

[0061] The heating head 2 is fixed to the upper connecting seat 12, so that the position of the heating head 2 is fixed, which can stably heat the atomizing pot 5 and ensure the normal atomization function.

[0062] The upper connecting seat 12 is provided with a magnetic trough 121, and a first permanent magnet is provided in the magnetic trough 121;

[0063] The mounting bracket 4 has a magnetic groove 42 on its top, and a second permanent magnet is disposed within the magnetic groove 42; the first permanent magnet and the second permanent magnet are arranged with opposite polarities. The magnetic poles attract each other, allowing for easy assembly and disassembly of the upper cover 1 and the mounting bracket 4, while ensuring a stable connection.

[0064] like Figure 3 As shown, the positioning mechanism 8 in this embodiment includes a positioning strip 81 disposed on the inner side of the upper cover 11 and a positioning hole 82 disposed on the edge of the upper connecting seat 12. The positioning strip 81 is inserted into the positioning hole 82; thereby achieving precise positioning and connection between the upper cover 11 and the upper connecting seat 12, ensuring accurate installation position, stable structure, and improved assembly efficiency and stability.

[0065] A connecting strip 21 is provided on the outer side of the heating head 2, and the connecting strip 21 abuts against the outer side of the positioning hole 82. This further secures the heating head 2, preventing it from loosening and ensuring stable operation, thereby guaranteeing the atomization effect.

[0066] like Figure 3 As shown, the heating head 2 in this embodiment includes a heat insulation shell 22 and a heat conduction seat 23. The heat conduction seat 23 is connected to the lower part of the heat insulation shell 22, and a heat exchange cavity 24 is provided between the heat conduction seat 23 and the interior of the heat insulation shell 22. The heat insulation shell 22 can reduce heat loss to the outside, the heat conduction seat 23 can effectively conduct heat, and the heat exchange cavity 24 provides space for gas heat exchange. The overall structure helps to improve heat utilization efficiency and ensures stable operation of the heating head 2.

[0067] The heat-conducting base 23 is provided with a heating chamber 25 for installing the first heater; the heat generated by the heater can be directly applied to the heating chamber 25, which facilitates the heat-conducting base 23 to heat the gas in the heat exchange chamber 24, reduces the influence of external gas on the internal temperature of the atomizing pot 5, and ensures the atomization effect.

[0068] The heat insulation shell 22 is provided with an air inlet 221 for introducing gas into the heat exchange chamber 24. The heat-conducting seat 23 is provided with an air outlet groove 231 for discharging gas from the heat exchange chamber 24 along the inner circumferential direction of its connection with the heat insulation shell 22. The air inlet 221, the heat exchange chamber 24, and the air outlet groove 231 form the air guiding channel 201. The gas flows in the air guiding channel 201 and exchanges heat with the heat-conducting seat 23 in the heat exchange chamber 24. The preheated gas enters the atomizing pot 5, which helps to improve the overall atomization effect and ensures that the atomizing pot 5 operates stably and at a constant temperature. At the same time, the air guiding channel 201 has a reasonable structure to ensure smooth gas flow.

[0069] like Figure 3 As shown, a heat sink 26 is provided on the heat-conducting base 23 in this embodiment, and a secondary heat chamber 27 for installing a second heater is provided between the heat sink 26 and the heat-conducting base 23. The secondary heat chamber 27 provides installation space for the second heater. The heat generated by the second heater can be conducted through the heat-conducting base 23 and radiated to the outside through the heat sink 26, which not only ensures the heating effect, but also allows for uniform external heat radiation, thereby improving the working stability of the heating head 2.

[0070] like Figure 2 , Figure 4 , Figure 5 As shown, the upper connecting base 12 is provided with a first conductive electrode 13; the top of the mounting bracket 4 is provided with a second conductive electrode 43, which is electrically connected to the battery 6. Both the first heater and the second heater are electrically connected to the battery 6 through the first conductive electrode 13 and the second conductive electrode 43. This electrode connection method enables the battery 6 to supply power to both the first and second heaters. The structure is simple and the connection is stable, ensuring that both heaters can work normally and providing reliable power support for the heating function of the electronic water vapor atomizer, thus guaranteeing the atomization effect.

[0071] like Figure 4 As shown, preferably, the heat-conducting base 23 is provided with a wire outlet groove 232 corresponding to the heating cavity 25, and the heat insulation shell 22 is provided with a clearance groove 222 corresponding to the wire outlet groove 232; the connection line of the first heater in the heating cavity 25 can be led out through the wire outlet groove 232, and the clearance groove 222 provides space for the line to be smoothly led out from the heat insulation shell 22, avoiding interference between the line and the heat insulation shell 22 and other components, ensuring stable line connection, ensuring normal power supply and operation of the heater, and making the overall structural layout more reasonable.

[0072] like Figure 4 As shown, the auxiliary heating chamber 27 is provided with a wire outlet 271 that communicates with the heating chamber 25; the connection line of the second heater in the auxiliary heating chamber 27 can be connected to the circuit in the heating chamber 25 or the external circuit through the wire outlet 271 to realize the electrical connection with the battery 6 and ensure the normal operation of the second heater. This connected wire outlet 271 design is convenient for wiring connection and will not damage the sealing and stability of the overall structure, ensuring the normal operation of the heating function of the electronic water vapor atomizer.

[0073] like Figure 3 As shown, the air outlet 231 includes an inlet end 2311 and a diffuser end 2312 that are interconnected. The inlet end 2311 and the diffuser end 2312 are offset along the vertical direction of the heat-conducting base 23. Specifically, the inlet end 2311 serves as the inlet for gas to enter the air outlet 231, and the diffuser end 2312 serves as the outlet for gas to exit from the air outlet 231. The flow and diffusion of gas within the air outlet 231 allows for more thorough mixing of the gas with the atomized e-liquid, which is beneficial for forming a more uniform and delicate vapor, thus enhancing the user's vaping experience.

[0074] The inlet end 2311 and the diffuser end 2312 are offset along the vertical direction of the heat-conducting base 23, so that after the gas enters from the inlet end 2311, it needs to flow to the diffuser end 2312 along a certain angle and path. This offset arrangement increases the flow distance and time of the gas in the outlet groove 231, so that the gas can better exchange heat and mix with the surrounding environment.

[0075] like Figure 4 As shown, in this embodiment, a heat insulation cavity 14 is provided between the heating head 2 and the upper cover shell 1. A sealing element 15 is provided at the connection between the heat insulation cavity 14 and the air inlet channel 201 and the air inlet groove 101. The sealing element 15 is provided with a limiting groove 151. The upper cover body 11 is provided with a limiting edge 111. The limiting edge 111 abuts against the limiting groove 151.

[0076] The heating head 2 generates a large amount of heat during operation. The presence of the heat insulation cavity 14 forms an air insulation layer between the heating head 2 and the upper cover 1. Since air is a poor conductor of heat, it effectively hinders heat transfer, reducing the conduction of heat generated by the heating head 2 to the upper cover 1. This prevents users from being burned by contact with the upper cover 1 during use, improving safety.

[0077] The seal 15 is elastic and can fill the gap at the joint, preventing gas from leaking from the joint between the air guide channel 201 and the air inlet groove 101. The seal 15 is typically made of elastic materials such as rubber or foamed silicone.

[0078] The sealing element 15 is positioned and fixed by the abutting engagement between the limiting edge 111 and the limiting groove 151. The limiting groove 151 restricts the movement of the sealing element 15 in the horizontal direction, while the limiting edge 111 prevents the sealing element 15 from dislodging from the predetermined position in the vertical direction, ensuring that the sealing element 15 can be accurately installed at the connection between the air guide channel 201 and the air inlet groove 101.

[0079] like Figure 4 As shown, a heat insulation component 16 is provided inside the heat insulation cavity 14. One end of the heat insulation component 16 abuts against the sealing component 15, and the other end of the heat insulation component 16 abuts against the upper connecting seat 12. The heat insulation component 16 can be made of aerogel felt, glass fiber cotton or foamed silicone. The heat insulation component 16 further enhances the heat insulation effect.

[0080] One end of the heat insulation component 16 abuts against the sealing component 15. On the one hand, the position of the sealing component 15 can play a certain positioning role for the heat insulation component 16. On the other hand, it can also prevent heat from leaking from the gap between the sealing component 15 and the heat insulation component 16, further enhancing the overall heat insulation and sealing effect.

[0081] The other end of the heat insulation component 16 abuts against the upper connecting seat 12, which can ensure that the heat insulation component 16 will not shift and will always remain in an effective heat insulation position, while also better blocking heat from being transferred upward from the heating head 2.

[0082] like Figure 4 As shown, preferably, a spacer groove 161 is provided between the heat insulation component 16 and the outer wall of the heating head 2, so as to better prevent the heat of the heating head 2 from being conducted from the heat insulation component 16 to the upper cover 11.

[0083] like Figure 5 and Figure 6 As shown, the mounting bracket 4 in this embodiment is internally equipped with a heat insulation module 9, and the atomizing pot 5 is fixed inside the heat insulation module 9. The heat insulation module 9 can effectively reduce heat transfer to other parts of the mounting bracket 4, reduce heat loss, and create a relatively stable and heat-insulated environment for heating the hookah smoking material in the atomizing pot 5. This helps to improve heating efficiency, ensure the stability of the heating process of the hookah smoking material in the atomizing pot 5, and improve the atomization effect. The heat insulation module 9 is made of high-temperature resistant silicone or foamed silicone.

[0084] The ventilation pipe 41 passes through the heat insulation module 9 and connects to the adapter base 7; this ensures a stable connection between the ventilation pipe 41 and the adapter base 7, and the heat insulation module 9 reduces the impact of heat around the ventilation pipe 41 on other components, ensuring the stability of gas flow in the ventilation pipe 41 and the rationality of the overall atomizer structure layout, which is conducive to the normal operation of the atomization process.

[0085] The mounting bracket 4 is provided with a receiving compartment 44, and a limiting piece 45 is provided at one end of the receiving compartment 44. The receiving compartment 44 is used to fix the battery 6 to the mounting bracket 4, and the limiting piece 45 can limit the battery 6 to prevent the component from shaking or shifting within the receiving compartment 44, thus ensuring the accuracy and stability of the component installation.

[0086] like Figure 5 , Figure 6 and Figure 7 As shown, the heat insulation module 9 in this embodiment has a fixing groove 91 inside, and the atomizing pot 5 is fixed to the fixing groove 91;

[0087] The inner wall of the mounting bracket 4 is provided with a slot 46, and the upper edge of the heat insulation module 9 is provided with a first locking block 92, which engages with the slot 46.

[0088] The heat insulation module 9 has multiple second locking blocks 93 spaced apart circumferentially at its lower part. A mating groove 94 is provided between two second locking blocks 93. The mounting bracket 4 is provided with a connecting piece 47 that is inserted into the mating groove 94. The connecting piece 47 is inserted into the mating groove 94, and the second locking block 93 is engaged with the bottom of the connecting piece 47.

[0089] Specifically, the atomizing pot 5 is positioned and fixed using the fixing groove 91, restricting its movement. This ensures that the atomizing pot 5 is stably placed within the heat insulation module 9, preventing shaking from affecting the heating and atomization effects and guaranteeing the normal operation of the atomizing pot 5.

[0090] The initial connection and fixation of the heat insulation module 9 and the first bracket are achieved by the engaging structure of the first locking block 92 and the locking slot 46. This ensures a tight connection between the heat insulation module 9 and the first bracket, enhances the overall stability of the structure, and prevents the heat insulation module 9 from shaking within the first bracket.

[0091] The connecting piece 47 is inserted into the mating groove 94, and the second locking block 93 engages with the bottom of the connecting piece 47, forming a more stable connection structure. This further strengthens the connection between the heat insulation module 9 and the first bracket, preventing the heat insulation module 9 from falling off and ensuring the stability and reliability of the overall structure.

[0092] like Figure 5 and Figure 6 As shown, the atomizing pot 5 in this embodiment includes a pot body 51 and a pot lid 52. The pot lid 52 is disposed on the upper part of the pot body 51, and the pot lid 52 is provided with a plurality of air guide holes 521 in the circumferential direction to guide the interior of the pot body 51.

[0093] The lid 52 is provided with at least two protrusions 522 spaced apart circumferentially on the side facing the pot body 51;

[0094] The pot body 51 is provided with a protruding pipe 511, which is connected to the vent pipe 41.

[0095] Specifically, the lid 52 and the pot body 51 cooperate to form a closed space. The lid 52 is provided with air guide holes 521 around its perimeter. During the heating and atomization process, external gas enters the pot body 51 through the air guide holes 521 to balance the suction pressure and ensure that the atomized gas in the pot body 51 is smoothly discharged.

[0096] The presence of at least two protrusions 522 provides a wider range of path options for the gas flow within the pot body 51, promoting the fullness of the combustion or atomization process of the hookah smoking material. The presence of a break interval between the two protrusions 522 disrupts the continuity between them, creating a structure that combines "breakpoints" and "channels" for airflow. This allows specific flow changes to occur at the break interval as the gas passes through the protrusions 522, such as the formation of vortices or pressure changes, thereby further regulating the flow speed and direction of the gas within the pot body 51.

[0097] A protruding pipe 511 is installed inside the pot body 51 and connected to the vent pipe 41, establishing a gas flow channel between the inside of the pot body 51 and the outside, ensuring that gas is discharged from the pot body 51 through the protruding pipe 511 and the vent pipe 41. This further ensures smooth gas flow. On the other hand, the protruding pipe 511 can prevent liquid hookah smoking material inside the pot body 51 from flowing into the vent pipe 41, reducing the loss of hookah smoking material.

[0098] like Figure 5 and Figure 6 As shown, the pot body 51 is provided with a heating component 512, which is electrically connected to the battery 6.

[0099] Specifically, a heating component 512 is installed in the pot body 51. The heat generated by the heating component 512 is used to heat the hookah smoking material inside the pot body 51, so that the hookah smoking material reaches the temperature required for atomization. This provides the necessary heat source for the atomization of the hookah smoking material inside the pot body 51, ensuring that the atomization function can be realized and meeting the working requirements of the electronic hookah atomizer.

[0100] The heating component 512 can be disposed at the bottom, side, or inner wall of the pot body 51 to adapt to different needs. In other embodiments, positive and negative electrodes can also be directly connected to the pot body 51 to heat the pot body 51.

[0101] The heating element 512 can be an electric heating element, an electromagnetic heating element 512, or an infrared thermal radiation heating element 512. The heating element 512 can effectively keep the temperature of the tobacco pan constant and ensure the stable reaction of the tobacco.

[0102] In practical use, if the heating element 512 is an electric heating element, the bottom of the pot is heated by conducting heat energy through the electric heating element. If the heating element 512 is an electromagnetic heating element 512, the pot material is selected as a ferromagnetic material, and the pot is electromagnetically heated by the electromagnetic coil of the electromagnetic heating element 512. If the heating element 512 is an infrared thermal radiation heating element 512, the bottom of the pot is heated by thermal radiation through the heating element of the infrared thermal radiation heating element 512.

[0103] By electrically connecting the heating component 512 to the battery 6, the battery 6 can supply power to the heating component 512, thereby enabling the heating component 512 to generate heat normally.

[0104] like Figure 5 and Figure 6 As shown, preferably, the lower housing 3 is provided with a lamp board 31, which is recessed inside the lower housing 3 and exposed on the surface of the lower housing 3. A PCB board 32 is provided on the lamp board 31, and the PCB board 32 is provided with a charging interface. The PCB board 32 is electrically connected to the battery 6 and the lamp board 31. The lower housing 3 is provided with a plurality of pressure relief holes 33.

[0105] Specifically, the light panel 31 is embedded inside the lower housing 3 and exposed on its surface, facilitating observation of the displayed content. The battery 6 is electrically connected to the external power grid via the charging interface of the PCB board 32, enabling charging. The light panel 31 is electrically connected to the battery 6 via the PCB board 32, providing power for its normal display. The light panel 31 can intuitively display information such as the working status of the electronic water vapor atomizer; the charging interface facilitates charging of the battery 6, ensuring the device's battery life; and the unified connection via the PCB board 32 allows the charging and display functions to operate in tandem, improving the convenience and functionality of the device.

[0106] When the electronic water vapor atomizer is working, internal pressure is generated. The lower housing 3 is equipped with multiple through-hole pressure relief holes 33 to allow the internal pressure to be released in a timely manner. This prevents excessive internal pressure from damaging the internal structure of the equipment, ensures safe and stable operation of the equipment, and extends its service life.

[0107] like Figure 5 and Figure 6 As shown, the adapter base 7 in this embodiment is provided with a connection slot 71, and the inner wall of the adapter base 7 is provided with a heat insulation cavity 72 along the circumference of the connection slot 71.

[0108] Specifically, the connecting slot 71 facilitates the connection between the adapter base 7 and the hookah bottle. The air layer in the insulation cavity 72 hinders heat transfer, preventing users from being burned by high temperatures when touching the adapter base 7 and improving user safety.

[0109] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. An electronic shisha atomizer, comprising: It includes upper cover shell (1), heating head (2), lower shell (3), mounting bracket (4), atomization pot (5), battery (6) and adaptive base (7); The upper cover shell (1) is arranged on the top of the atomization pot (5), the heating head (2) is arranged in the upper cover shell (1), the mounting bracket (4) is arranged in the lower shell (3), the atomization pot (5) is arranged on the upper part of the mounting bracket (4), and the battery (6) is arranged on the lower part of the mounting bracket (4) and is used for being electrically connected with the heater in the heating head (2); The adaptive base (7) is connected to the bottom of the lower shell (3); The upper cover shell (1) is provided with an air inlet groove (101), the heating head (2) is provided with a gas guide channel (201) inside, and the air inlet groove (101), the gas guide channel (201) and the atomization pot (5) are communicated. The mounting bracket (4) is provided with an air pipe (41), the atomization pot (5) is connected with the adaptive base (7) through the air pipe (41), and the adaptive base (7) is connected with the water pipe.

2. The electronic shisha atomizer of claim 1, wherein, The upper cover shell (1) includes an upper cover body (11) and an upper connecting seat (12), a positioning mechanism (8) is arranged between the upper cover body (11) and the upper connecting seat (12), the upper cover body (11) is connected to the outer side of the upper connecting seat (12) through the positioning mechanism (8), and the heating head (2) is fixed to the upper connecting seat (12). The upper connecting seat (12) is provided with a magnetic slot (121), and a first permanent magnet is arranged in the magnetic slot (121). The mounting bracket (4) is provided with a magnetic slot (42) on the top, and a second permanent magnet is arranged in the magnetic slot (42); the first permanent magnet and the second permanent magnet are arranged with opposite polarities.

3. The electronic shisha atomizer of claim 2, wherein, The positioning mechanism (8) includes a positioning strip (81) arranged on the inner side of the upper cover body (11) and a positioning hole (82) arranged on the edge of the upper connecting seat (12), and the positioning strip (81) is inserted into the positioning hole (82). The heating head (2) is provided with a connecting clamping strip (21) on the outer side, and the connecting clamping strip (21) abuts against the outer side of the positioning hole (82).

4. The electronic shisha atomizer of claim 2, wherein, The heating head (2) includes a heat insulation shell (22) and a heat conduction seat (23), the heat conduction seat (23) is connected to the lower part of the heat insulation shell (22), and a heat exchange cavity (24) is arranged between the heat conduction seat (23) and the inside of the heat insulation shell (22); The heat conduction seat (23) is provided with a heating cavity (25) for mounting a first heater; The heat insulation shell (22) is provided with an air inlet (221) for guiding gas into the heat exchange cavity (24), the heat conduction seat (23) is provided with an air outlet groove (231) for discharging gas from the heat exchange cavity (24) along the inner side of the connection between the heat conduction seat (23) and the heat insulation shell (22), and the air inlet (221), the heat exchange cavity (24) and the air outlet groove (231) form the gas guide channel (201).

5. The electronic shisha atomizer of claim 4, wherein, A heat dissipation device (26) is arranged on the heat conduction seat (23), and a sub-heat cavity (27) for mounting a second heater is arranged between the heat dissipation device (26) and the heat conduction seat (23); The upper connecting seat (12) is provided with a first conductive electrode (13); the top of the mounting bracket (4) is provided with a second conductive electrode (43), and the second conductive electrode (43) is electrically connected with the battery (6); the first heater and the second heater are electrically connected with the battery (6) through the first conductive electrode (13) and the second conductive electrode (43).

6. The electronic shisha atomizer of claim 2, wherein, A heat insulation cavity (14) is arranged between the heating head (2) and the upper cover shell (1), a sealing element (15) is arranged at the connection of the air guide channel (201) and the air inlet groove (101), the sealing element (15) is provided with a limiting groove (151), the upper cover body (11) is provided with a limiting edge (111), and the limiting edge (111) is in abutment with the limiting groove (151).

7. The electronic shisha atomizer of claim 1, wherein, The mounting bracket (4) is internally provided with a heat insulation module (9), and the atomizing pot (5) is fixed in the heat insulation module (9); The air pipe (41) penetrates through the heat insulation module (9) and is connected with the adaptive base (7); The mounting bracket (4) is provided with a containing bin (44), and one end of the containing bin (44) is provided with a limiting sheet (45).

8. The electronic shisha atomizer of claim 7, wherein, The heat insulation module (9) is internally provided with a fixing groove (91), and the atomizing pot (5) is fixed in the fixing groove (91); The inner wall of the mounting bracket (4) is provided with a clamping groove (46), the upper edge of the heat insulation module (9) is provided with a first clamping block (92), and the first clamping block (92) is clamped and connected with the clamping groove (46); The heat insulation module (9) is circumferentially and intermittently provided with a plurality of second clamping blocks (93), a matching groove (94) is arranged between two second clamping blocks (93), the mounting bracket (4) is provided with a connecting sheet (47) which is inserted into the matching groove (94), the second clamping block (93) is clamped and connected with the bottom of the connecting sheet (47).

9. The electronic shisha atomizer of claim 1, wherein, The atomizing pot (5) comprises a pot body (51) and a pot cover (52), the pot cover (52) is arranged on the upper portion of the pot body (51), and a plurality of air guide holes (521) which guide the inside of the pot body (51) are circumferentially arranged on the pot cover (52); At least two convex blocks (522) are circumferentially and intermittently arranged on the side of the pot cover (52) which faces the pot body (51). The pot body (51) is internally provided with a protruding pipe (511), and the protruding pipe (511) is connected with the air pipe (41).

10. The electronic shisha atomizer of claim 9, wherein, The pot body (51) is provided with a heating assembly (512), and the heating assembly (512) is electrically connected with the battery (6).

11. The electronic shisha atomizer of claim 1, wherein, The adaptive base (7) is provided with a connecting groove (71), and a temperature insulation cavity (72) is circumferentially arranged on the inner wall of the adaptive base (7) along the connecting groove (71).